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DOI10.5194/acp-20-2795-2020
Comparison of tropospheric NO2 columns from MAX-DOAS retrievals and regional air quality model simulations
Blechschmidt A.-M.; Arteta J.; Coman A.; Curier L.; Eskes H.; Foret G.; Gielen C.; Hendrick F.; Marécal V.; Meleux F.; Parmentier J.; Peters E.; Pinardi G.; J M Piters A.; Plu M.; Richter A.; Segers A.; Sofiev M.; Valdebenito A.M.; Van Roozendael M.; Vira J.; Vlemmix T.; P. Burrows J.
发表日期2020
ISSN1680-7316
起始页码2795
结束页码2823
卷号20期号:5
英文摘要Multi-axis differential optical absorption spectroscopy (MAX-DOAS) tropospheric NO2 column retrievals from four European measurement stations are compared to simulations from five regional air quality models which contribute to the European regional ensemble forecasts and reanalyses of the operational Copernicus Atmosphere Monitoring Service (CAMS). Compared to other observational data usually applied for regional model evaluation, MAX-DOAS data are closer to the regional model data in terms of horizontal and vertical resolution, and multiple measurements are available during daylight, so that, for example, diurnal cycles of trace gases can be investigated.

In general, there is good agreement between simulated and retrieved NO2 column values for individual MAX-DOAS measurements with correlations between 35 % and 70 % for individual models and 45 % to 75 % for the ensemble median for tropospheric NO2 vertical column densities (VCDs), indicating that emissions, transport and tropospheric chemistry of NOx are on average well simulated. However, large differences are found for individual pollution plumes observed by MAX-DOAS. Most of the models overestimate seasonal cycles for the majority of MAX-DOAS sites investigated. At the urban stations, weekly cycles are reproduced well, but the decrease towards the weekend is underestimated and diurnal cycles are overall not well represented. In particular, simulated morning rush hour peaks are not confirmed by MAX-DOAS retrievals, and models fail to reproduce observed changes in diurnal cycles for weekdays versus weekends. The results of this study show that future model development needs to concentrate on improving representation of diurnal cycles and associated temporal scalings. © 2020 Copernicus GmbH. All rights reserved.
语种英语
scopus关键词air quality; atmospheric chemistry; computer simulation; diurnal variation; ensemble forecasting; nitrogen dioxide; numerical model; regional climate; spatiotemporal analysis; troposphere
来源期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/247932
作者单位Institute of Environmental Physics, University of Bremen, IUP-UB, Bremen, Germany; Centre National de Recherches Météorologiques, Université de Toulouse, Météo-France, CNRS, Toulouse, France; Laboratoire Interuniversitaire des Systèmes Atmosphériques, CNRS/INSU UMR7583, Université Paris-Est Créteil et Université Paris Diderot, Institut Pierre Simon Laplace, Créteil, France; TNO, Climate Air and Sustainability Unit, Utrecht, Netherlands; Royal Netherlands Meteorological Institute, KNMI, De Bilt, Netherlands; Royal Belgian Institute for Space Aeronomy, BIRA-IASB, Brussels, Belgium; Institut National de l'Environnement et des RISques Industriels, INERIS, Verneuil-en-Halatte, France; Finnish Meteorological Institute, FMI, Helsinki, Finland; Norwegian Meteorological Institute, MetNo, Oslo, Norway; Royal Netherlands Meteorological Institute (KNMI), De Bilt, Netherlands; Faculty of Humanities and Sciences, Department of Biobased Materials, Maastricht University, Geleen, Netherlands
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GB/T 7714
Blechschmidt A.-M.,Arteta J.,Coman A.,et al. Comparison of tropospheric NO2 columns from MAX-DOAS retrievals and regional air quality model simulations[J],2020,20(5).
APA Blechschmidt A.-M..,Arteta J..,Coman A..,Curier L..,Eskes H..,...&P. Burrows J..(2020).Comparison of tropospheric NO2 columns from MAX-DOAS retrievals and regional air quality model simulations.ATMOSPHERIC CHEMISTRY AND PHYSICS,20(5).
MLA Blechschmidt A.-M.,et al."Comparison of tropospheric NO2 columns from MAX-DOAS retrievals and regional air quality model simulations".ATMOSPHERIC CHEMISTRY AND PHYSICS 20.5(2020).
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